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- Use the keying module, that was introduced in forgejo/forgejo#5041, to store action secrets safely and securely in the database. - Introduce a central function that sets the secret, `SetSecret` and let the caller do the update call. This is similar to how the twofactor (TOTP) models does it. Ref. https://codeberg.org/forgejo/forgejo/pulls/6074 - Add a relaxed migration, that is run inside a transaction. If it cannot decrypt a action secret, then it's deleted. Reviewed-on: https://codeberg.org/forgejo/forgejo/pulls/8692 Reviewed-by: Earl Warren <earl-warren@noreply.codeberg.org> Co-authored-by: Gusted <postmaster@gusted.xyz> Co-committed-by: Gusted <postmaster@gusted.xyz>
160 lines
5.3 KiB
Go
160 lines
5.3 KiB
Go
// Copyright 2022 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package secret
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import (
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"context"
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"fmt"
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"strings"
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actions_model "forgejo.org/models/actions"
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"forgejo.org/models/db"
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actions_module "forgejo.org/modules/actions"
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"forgejo.org/modules/keying"
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"forgejo.org/modules/log"
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"forgejo.org/modules/timeutil"
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"forgejo.org/modules/util"
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"xorm.io/builder"
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)
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// Secret represents a secret
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//
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// It can be:
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// 1. org/user level secret, OwnerID is org/user ID and RepoID is 0
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// 2. repo level secret, OwnerID is 0 and RepoID is repo ID
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//
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// Please note that it's not acceptable to have both OwnerID and RepoID to be non-zero,
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// or it will be complicated to find secrets belonging to a specific owner.
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// For example, conditions like `OwnerID = 1` will also return secret {OwnerID: 1, RepoID: 1},
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// but it's a repo level secret, not an org/user level secret.
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// To avoid this, make it clear with {OwnerID: 0, RepoID: 1} for repo level secrets.
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//
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// Please note that it's not acceptable to have both OwnerID and RepoID to zero, global secrets are not supported.
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// It's for security reasons, admin may be not aware of that the secrets could be stolen by any user when setting them as global.
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type Secret struct {
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ID int64
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OwnerID int64 `xorm:"INDEX UNIQUE(owner_repo_name) NOT NULL"`
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RepoID int64 `xorm:"INDEX UNIQUE(owner_repo_name) NOT NULL DEFAULT 0"`
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Name string `xorm:"UNIQUE(owner_repo_name) NOT NULL"`
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Data []byte `xorm:"BLOB"` // encrypted data
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CreatedUnix timeutil.TimeStamp `xorm:"created NOT NULL"`
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}
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// ErrSecretNotFound represents a "secret not found" error.
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type ErrSecretNotFound struct {
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Name string
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}
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func (err ErrSecretNotFound) Error() string {
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return fmt.Sprintf("secret was not found [name: %s]", err.Name)
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}
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func (err ErrSecretNotFound) Unwrap() error {
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return util.ErrNotExist
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}
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// InsertEncryptedSecret Creates, encrypts, and validates a new secret with yet unencrypted data and insert into database
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func InsertEncryptedSecret(ctx context.Context, ownerID, repoID int64, name, data string) (*Secret, error) {
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if ownerID != 0 && repoID != 0 {
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// It's trying to create a secret that belongs to a repository, but OwnerID has been set accidentally.
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// Remove OwnerID to avoid confusion; it's not worth returning an error here.
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ownerID = 0
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}
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if ownerID == 0 && repoID == 0 {
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return nil, fmt.Errorf("%w: ownerID and repoID cannot be both zero, global secrets are not supported", util.ErrInvalidArgument)
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}
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secret := &Secret{
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OwnerID: ownerID,
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RepoID: repoID,
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Name: strings.ToUpper(name),
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}
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return secret, db.WithTx(ctx, func(ctx context.Context) error {
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if err := db.Insert(ctx, secret); err != nil {
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return err
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}
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secret.SetSecret(data)
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_, err := db.GetEngine(ctx).ID(secret.ID).Cols("data").Update(secret)
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return err
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})
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}
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func init() {
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db.RegisterModel(new(Secret))
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}
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type FindSecretsOptions struct {
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db.ListOptions
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RepoID int64
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OwnerID int64 // it will be ignored if RepoID is set
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SecretID int64
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Name string
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}
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func (opts FindSecretsOptions) ToConds() builder.Cond {
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cond := builder.NewCond()
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cond = cond.And(builder.Eq{"repo_id": opts.RepoID})
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if opts.RepoID != 0 { // if RepoID is set
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// ignore OwnerID and treat it as 0
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cond = cond.And(builder.Eq{"owner_id": 0})
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} else {
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cond = cond.And(builder.Eq{"owner_id": opts.OwnerID})
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}
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if opts.SecretID != 0 {
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cond = cond.And(builder.Eq{"id": opts.SecretID})
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}
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if opts.Name != "" {
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cond = cond.And(builder.Eq{"name": strings.ToUpper(opts.Name)})
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}
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return cond
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}
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func (s *Secret) SetSecret(data string) {
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key := keying.DeriveKey(keying.ContextActionSecret)
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s.Data = key.Encrypt([]byte(data), keying.ColumnAndID("data", s.ID))
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}
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func GetSecretsOfTask(ctx context.Context, task *actions_model.ActionTask) (map[string]string, error) {
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secrets := map[string]string{}
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secrets["GITHUB_TOKEN"] = task.Token
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secrets["GITEA_TOKEN"] = task.Token
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secrets["FORGEJO_TOKEN"] = task.Token
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if task.Job.Run.IsForkPullRequest && task.Job.Run.TriggerEvent != actions_module.GithubEventPullRequestTarget {
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// ignore secrets for fork pull request, except GITHUB_TOKEN, GITEA_TOKEN and FORGEJO_TOKEN which are automatically generated.
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// for the tasks triggered by pull_request_target event, they could access the secrets because they will run in the context of the base branch
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// see the documentation: https://docs.github.com/en/actions/using-workflows/events-that-trigger-workflows#pull_request_target
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return secrets, nil
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}
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ownerSecrets, err := db.Find[Secret](ctx, FindSecretsOptions{OwnerID: task.Job.Run.Repo.OwnerID})
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if err != nil {
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log.Error("find secrets of owner %v: %v", task.Job.Run.Repo.OwnerID, err)
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return nil, err
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}
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repoSecrets, err := db.Find[Secret](ctx, FindSecretsOptions{RepoID: task.Job.Run.RepoID})
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if err != nil {
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log.Error("find secrets of repo %v: %v", task.Job.Run.RepoID, err)
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return nil, err
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}
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key := keying.DeriveKey(keying.ContextActionSecret)
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for _, secret := range append(ownerSecrets, repoSecrets...) {
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v, err := key.Decrypt(secret.Data, keying.ColumnAndID("data", secret.ID))
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if err != nil {
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log.Error("unable to decrypt secret[id=%d,name=%q]: %v", secret.ID, secret.Name, err)
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return nil, err
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}
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secrets[secret.Name] = string(v)
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}
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return secrets, nil
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}
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